1 /* $NetBSD: sysv_shm.c,v 1.60 2000/11/14 22:16:38 thorpej Exp $ */ 2 3 /*- 4 * Copyright (c) 1999 The NetBSD Foundation, Inc. 5 * All rights reserved. 6 * 7 * This code is derived from software contributed to The NetBSD Foundation 8 * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility, 9 * NASA Ames Research Center. 10 * 11 * Redistribution and use in source and binary forms, with or without 12 * modification, are permitted provided that the following conditions 13 * are met: 14 * 1. Redistributions of source code must retain the above copyright 15 * notice, this list of conditions and the following disclaimer. 16 * 2. Redistributions in binary form must reproduce the above copyright 17 * notice, this list of conditions and the following disclaimer in the 18 * documentation and/or other materials provided with the distribution. 19 * 3. All advertising materials mentioning features or use of this software 20 * must display the following acknowledgement: 21 * This product includes software developed by the NetBSD 22 * Foundation, Inc. and its contributors. 23 * 4. Neither the name of The NetBSD Foundation nor the names of its 24 * contributors may be used to endorse or promote products derived 25 * from this software without specific prior written permission. 26 * 27 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 28 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 29 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 30 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 31 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 32 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 33 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 34 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 35 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 36 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 37 * POSSIBILITY OF SUCH DAMAGE. 38 */ 39 40 /* 41 * Copyright (c) 1994 Adam Glass and Charles M. Hannum. All rights reserved. 42 * 43 * Redistribution and use in source and binary forms, with or without 44 * modification, are permitted provided that the following conditions 45 * are met: 46 * 1. Redistributions of source code must retain the above copyright 47 * notice, this list of conditions and the following disclaimer. 48 * 2. Redistributions in binary form must reproduce the above copyright 49 * notice, this list of conditions and the following disclaimer in the 50 * documentation and/or other materials provided with the distribution. 51 * 3. All advertising materials mentioning features or use of this software 52 * must display the following acknowledgement: 53 * This product includes software developed by Adam Glass and Charles M. 54 * Hannum. 55 * 4. The names of the authors may not be used to endorse or promote products 56 * derived from this software without specific prior written permission. 57 * 58 * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS OR 59 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 60 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 61 * IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT, 62 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 63 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 64 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 65 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 66 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 67 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 68 */ 69 70 #define SYSVSHM 71 72 #include <sys/types.h> 73 #include <sys/param.h> 74 #include <sys/kernel.h> 75 #include <sys/shm.h> 76 #include <sys/malloc.h> 77 #include <sys/mman.h> 78 #include <sys/stat.h> 79 #include <sys/sysctl.h> 80 #include <sys/mount.h> /* XXX for <sys/syscallargs.h> */ 81 #include <sys/syscallargs.h> 82 83 #include <uvm/uvm_extern.h> 84 85 struct shmid_ds *shm_find_segment_by_shmid __P((int)); 86 87 /* 88 * Provides the following externally accessible functions: 89 * 90 * shminit(void); initialization 91 * shmexit(struct vmspace *) cleanup 92 * shmfork(struct vmspace *, struct vmspace *) fork handling 93 * 94 * Structures: 95 * shmsegs (an array of 'struct shmid_ds') 96 * per proc array of 'struct shmmap_state' 97 */ 98 99 #define SHMSEG_FREE 0x0200 100 #define SHMSEG_REMOVED 0x0400 101 #define SHMSEG_ALLOCATED 0x0800 102 #define SHMSEG_WANTED 0x1000 103 104 int shm_last_free, shm_nused, shm_committed; 105 struct shmid_ds *shmsegs; 106 107 struct shm_handle { 108 struct uvm_object *shm_object; 109 }; 110 111 struct shmmap_state { 112 vaddr_t va; 113 int shmid; 114 }; 115 116 static int shm_find_segment_by_key __P((key_t)); 117 static void shm_deallocate_segment __P((struct shmid_ds *)); 118 static int shm_delete_mapping __P((struct vmspace *, struct shmmap_state *)); 119 static int shmget_existing __P((struct proc *, struct sys_shmget_args *, 120 int, int, register_t *)); 121 static int shmget_allocate_segment __P((struct proc *, struct sys_shmget_args *, 122 int, register_t *)); 123 124 static int 125 shm_find_segment_by_key(key) 126 key_t key; 127 { 128 int i; 129 130 for (i = 0; i < shminfo.shmmni; i++) 131 if ((shmsegs[i].shm_perm.mode & SHMSEG_ALLOCATED) && 132 shmsegs[i].shm_perm._key == key) 133 return i; 134 return -1; 135 } 136 137 struct shmid_ds * 138 shm_find_segment_by_shmid(shmid) 139 int shmid; 140 { 141 int segnum; 142 struct shmid_ds *shmseg; 143 144 segnum = IPCID_TO_IX(shmid); 145 if (segnum < 0 || segnum >= shminfo.shmmni) 146 return NULL; 147 shmseg = &shmsegs[segnum]; 148 if ((shmseg->shm_perm.mode & (SHMSEG_ALLOCATED | SHMSEG_REMOVED)) 149 != SHMSEG_ALLOCATED || 150 shmseg->shm_perm._seq != IPCID_TO_SEQ(shmid)) 151 return NULL; 152 return shmseg; 153 } 154 155 static void 156 shm_deallocate_segment(shmseg) 157 struct shmid_ds *shmseg; 158 { 159 struct shm_handle *shm_handle; 160 size_t size; 161 162 shm_handle = shmseg->_shm_internal; 163 size = (shmseg->shm_segsz + PGOFSET) & ~PGOFSET; 164 uao_detach(shm_handle->shm_object); 165 free((caddr_t)shm_handle, M_SHM); 166 shmseg->_shm_internal = NULL; 167 shm_committed -= btoc(size); 168 shmseg->shm_perm.mode = SHMSEG_FREE; 169 shm_nused--; 170 } 171 172 static int 173 shm_delete_mapping(vm, shmmap_s) 174 struct vmspace *vm; 175 struct shmmap_state *shmmap_s; 176 { 177 struct shmid_ds *shmseg; 178 int segnum, result; 179 size_t size; 180 181 segnum = IPCID_TO_IX(shmmap_s->shmid); 182 shmseg = &shmsegs[segnum]; 183 size = (shmseg->shm_segsz + PGOFSET) & ~PGOFSET; 184 result = uvm_deallocate(&vm->vm_map, shmmap_s->va, size); 185 if (result != KERN_SUCCESS) 186 return EINVAL; 187 shmmap_s->shmid = -1; 188 shmseg->shm_dtime = time.tv_sec; 189 if ((--shmseg->shm_nattch <= 0) && 190 (shmseg->shm_perm.mode & SHMSEG_REMOVED)) { 191 shm_deallocate_segment(shmseg); 192 shm_last_free = segnum; 193 } 194 return 0; 195 } 196 197 int 198 sys_shmdt(p, v, retval) 199 struct proc *p; 200 void *v; 201 register_t *retval; 202 { 203 struct sys_shmdt_args /* { 204 syscallarg(const void *) shmaddr; 205 } */ *uap = v; 206 struct shmmap_state *shmmap_s; 207 int i; 208 209 shmmap_s = (struct shmmap_state *)p->p_vmspace->vm_shm; 210 if (shmmap_s == NULL) 211 return EINVAL; 212 213 for (i = 0; i < shminfo.shmseg; i++, shmmap_s++) 214 if (shmmap_s->shmid != -1 && 215 shmmap_s->va == (vaddr_t)SCARG(uap, shmaddr)) 216 break; 217 if (i == shminfo.shmseg) 218 return EINVAL; 219 return shm_delete_mapping(p->p_vmspace, shmmap_s); 220 } 221 222 int 223 sys_shmat(p, v, retval) 224 struct proc *p; 225 void *v; 226 register_t *retval; 227 { 228 struct sys_shmat_args /* { 229 syscallarg(int) shmid; 230 syscallarg(const void *) shmaddr; 231 syscallarg(int) shmflg; 232 } */ *uap = v; 233 int error, i, flags; 234 struct ucred *cred = p->p_ucred; 235 struct shmid_ds *shmseg; 236 struct shmmap_state *shmmap_s = NULL; 237 struct shm_handle *shm_handle; 238 vaddr_t attach_va; 239 vm_prot_t prot; 240 vsize_t size; 241 int rv; 242 243 shmmap_s = (struct shmmap_state *)p->p_vmspace->vm_shm; 244 if (shmmap_s == NULL) { 245 size = shminfo.shmseg * sizeof(struct shmmap_state); 246 shmmap_s = malloc(size, M_SHM, M_WAITOK); 247 for (i = 0; i < shminfo.shmseg; i++) 248 shmmap_s[i].shmid = -1; 249 p->p_vmspace->vm_shm = (caddr_t)shmmap_s; 250 } 251 shmseg = shm_find_segment_by_shmid(SCARG(uap, shmid)); 252 if (shmseg == NULL) 253 return EINVAL; 254 error = ipcperm(cred, &shmseg->shm_perm, 255 (SCARG(uap, shmflg) & SHM_RDONLY) ? IPC_R : IPC_R|IPC_W); 256 if (error) 257 return error; 258 for (i = 0; i < shminfo.shmseg; i++) { 259 if (shmmap_s->shmid == -1) 260 break; 261 shmmap_s++; 262 } 263 if (i >= shminfo.shmseg) 264 return EMFILE; 265 size = (shmseg->shm_segsz + PGOFSET) & ~PGOFSET; 266 prot = VM_PROT_READ; 267 if ((SCARG(uap, shmflg) & SHM_RDONLY) == 0) 268 prot |= VM_PROT_WRITE; 269 flags = MAP_ANON | MAP_SHARED; 270 if (SCARG(uap, shmaddr)) { 271 flags |= MAP_FIXED; 272 if (SCARG(uap, shmflg) & SHM_RND) 273 attach_va = 274 (vaddr_t)SCARG(uap, shmaddr) & ~(SHMLBA-1); 275 else if (((vaddr_t)SCARG(uap, shmaddr) & (SHMLBA-1)) == 0) 276 attach_va = (vaddr_t)SCARG(uap, shmaddr); 277 else 278 return EINVAL; 279 } else { 280 /* This is just a hint to vm_mmap() about where to put it. */ 281 attach_va = 282 round_page((vaddr_t)p->p_vmspace->vm_taddr + 283 MAXTSIZ + MAXDSIZ); 284 } 285 shm_handle = shmseg->_shm_internal; 286 uao_reference(shm_handle->shm_object); 287 rv = uvm_map(&p->p_vmspace->vm_map, &attach_va, size, 288 shm_handle->shm_object, 0, 0, 289 UVM_MAPFLAG(prot, prot, UVM_INH_SHARE, 290 UVM_ADV_RANDOM, 0)); 291 if (rv != KERN_SUCCESS) { 292 return ENOMEM; 293 } 294 295 shmmap_s->va = attach_va; 296 shmmap_s->shmid = SCARG(uap, shmid); 297 shmseg->shm_lpid = p->p_pid; 298 shmseg->shm_atime = time.tv_sec; 299 shmseg->shm_nattch++; 300 *retval = attach_va; 301 return 0; 302 } 303 304 int 305 sys___shmctl13(p, v, retval) 306 struct proc *p; 307 void *v; 308 register_t *retval; 309 { 310 struct sys___shmctl13_args /* { 311 syscallarg(int) shmid; 312 syscallarg(int) cmd; 313 syscallarg(struct shmid_ds *) buf; 314 } */ *uap = v; 315 struct shmid_ds shmbuf; 316 int cmd, error; 317 318 cmd = SCARG(uap, cmd); 319 320 if (cmd == IPC_SET) { 321 error = copyin(SCARG(uap, buf), &shmbuf, sizeof(shmbuf)); 322 if (error) 323 return (error); 324 } 325 326 error = shmctl1(p, SCARG(uap, shmid), cmd, 327 (cmd == IPC_SET || cmd == IPC_STAT) ? &shmbuf : NULL); 328 329 if (error == 0 && cmd == IPC_STAT) 330 error = copyout(&shmbuf, SCARG(uap, buf), sizeof(shmbuf)); 331 332 return (error); 333 } 334 335 int 336 shmctl1(p, shmid, cmd, shmbuf) 337 struct proc *p; 338 int shmid; 339 int cmd; 340 struct shmid_ds *shmbuf; 341 { 342 struct ucred *cred = p->p_ucred; 343 struct shmid_ds *shmseg; 344 int error = 0; 345 346 shmseg = shm_find_segment_by_shmid(shmid); 347 if (shmseg == NULL) 348 return EINVAL; 349 switch (cmd) { 350 case IPC_STAT: 351 if ((error = ipcperm(cred, &shmseg->shm_perm, IPC_R)) != 0) 352 return error; 353 memcpy(shmbuf, shmseg, sizeof(struct shmid_ds)); 354 break; 355 case IPC_SET: 356 if ((error = ipcperm(cred, &shmseg->shm_perm, IPC_M)) != 0) 357 return error; 358 shmseg->shm_perm.uid = shmbuf->shm_perm.uid; 359 shmseg->shm_perm.gid = shmbuf->shm_perm.gid; 360 shmseg->shm_perm.mode = 361 (shmseg->shm_perm.mode & ~ACCESSPERMS) | 362 (shmbuf->shm_perm.mode & ACCESSPERMS); 363 shmseg->shm_ctime = time.tv_sec; 364 break; 365 case IPC_RMID: 366 if ((error = ipcperm(cred, &shmseg->shm_perm, IPC_M)) != 0) 367 return error; 368 shmseg->shm_perm._key = IPC_PRIVATE; 369 shmseg->shm_perm.mode |= SHMSEG_REMOVED; 370 if (shmseg->shm_nattch <= 0) { 371 shm_deallocate_segment(shmseg); 372 shm_last_free = IPCID_TO_IX(shmid); 373 } 374 break; 375 case SHM_LOCK: 376 case SHM_UNLOCK: 377 default: 378 return EINVAL; 379 } 380 return 0; 381 } 382 383 static int 384 shmget_existing(p, uap, mode, segnum, retval) 385 struct proc *p; 386 struct sys_shmget_args /* { 387 syscallarg(key_t) key; 388 syscallarg(size_t) size; 389 syscallarg(int) shmflg; 390 } */ *uap; 391 int mode; 392 int segnum; 393 register_t *retval; 394 { 395 struct shmid_ds *shmseg; 396 struct ucred *cred = p->p_ucred; 397 int error; 398 399 shmseg = &shmsegs[segnum]; 400 if (shmseg->shm_perm.mode & SHMSEG_REMOVED) { 401 /* 402 * This segment is in the process of being allocated. Wait 403 * until it's done, and look the key up again (in case the 404 * allocation failed or it was freed). 405 */ 406 shmseg->shm_perm.mode |= SHMSEG_WANTED; 407 error = tsleep((caddr_t)shmseg, PLOCK | PCATCH, "shmget", 0); 408 if (error) 409 return error; 410 return EAGAIN; 411 } 412 if ((error = ipcperm(cred, &shmseg->shm_perm, mode)) != 0) 413 return error; 414 if (SCARG(uap, size) && SCARG(uap, size) > shmseg->shm_segsz) 415 return EINVAL; 416 if ((SCARG(uap, shmflg) & (IPC_CREAT | IPC_EXCL)) == 417 (IPC_CREAT | IPC_EXCL)) 418 return EEXIST; 419 *retval = IXSEQ_TO_IPCID(segnum, shmseg->shm_perm); 420 return 0; 421 } 422 423 static int 424 shmget_allocate_segment(p, uap, mode, retval) 425 struct proc *p; 426 struct sys_shmget_args /* { 427 syscallarg(key_t) key; 428 syscallarg(size_t) size; 429 syscallarg(int) shmflg; 430 } */ *uap; 431 int mode; 432 register_t *retval; 433 { 434 int i, segnum, shmid, size; 435 struct ucred *cred = p->p_ucred; 436 struct shmid_ds *shmseg; 437 struct shm_handle *shm_handle; 438 int error = 0; 439 440 if (SCARG(uap, size) < shminfo.shmmin || 441 SCARG(uap, size) > shminfo.shmmax) 442 return EINVAL; 443 if (shm_nused >= shminfo.shmmni) /* any shmids left? */ 444 return ENOSPC; 445 size = (SCARG(uap, size) + PGOFSET) & ~PGOFSET; 446 if (shm_committed + btoc(size) > shminfo.shmall) 447 return ENOMEM; 448 if (shm_last_free < 0) { 449 for (i = 0; i < shminfo.shmmni; i++) 450 if (shmsegs[i].shm_perm.mode & SHMSEG_FREE) 451 break; 452 if (i == shminfo.shmmni) 453 panic("shmseg free count inconsistent"); 454 segnum = i; 455 } else { 456 segnum = shm_last_free; 457 shm_last_free = -1; 458 } 459 shmseg = &shmsegs[segnum]; 460 /* 461 * In case we sleep in malloc(), mark the segment present but deleted 462 * so that noone else tries to create the same key. 463 */ 464 shmseg->shm_perm.mode = SHMSEG_ALLOCATED | SHMSEG_REMOVED; 465 shmseg->shm_perm._key = SCARG(uap, key); 466 shmseg->shm_perm._seq = (shmseg->shm_perm._seq + 1) & 0x7fff; 467 shm_handle = (struct shm_handle *) 468 malloc(sizeof(struct shm_handle), M_SHM, M_WAITOK); 469 shmid = IXSEQ_TO_IPCID(segnum, shmseg->shm_perm); 470 471 shm_handle->shm_object = uao_create(size, 0); 472 473 shmseg->_shm_internal = shm_handle; 474 shmseg->shm_perm.cuid = shmseg->shm_perm.uid = cred->cr_uid; 475 shmseg->shm_perm.cgid = shmseg->shm_perm.gid = cred->cr_gid; 476 shmseg->shm_perm.mode = (shmseg->shm_perm.mode & SHMSEG_WANTED) | 477 (mode & ACCESSPERMS) | SHMSEG_ALLOCATED; 478 shmseg->shm_segsz = SCARG(uap, size); 479 shmseg->shm_cpid = p->p_pid; 480 shmseg->shm_lpid = shmseg->shm_nattch = 0; 481 shmseg->shm_atime = shmseg->shm_dtime = 0; 482 shmseg->shm_ctime = time.tv_sec; 483 shm_committed += btoc(size); 484 shm_nused++; 485 486 *retval = shmid; 487 if (shmseg->shm_perm.mode & SHMSEG_WANTED) { 488 /* 489 * Somebody else wanted this key while we were asleep. Wake 490 * them up now. 491 */ 492 shmseg->shm_perm.mode &= ~SHMSEG_WANTED; 493 wakeup((caddr_t)shmseg); 494 } 495 return error; 496 } 497 498 int 499 sys_shmget(p, v, retval) 500 struct proc *p; 501 void *v; 502 register_t *retval; 503 { 504 struct sys_shmget_args /* { 505 syscallarg(key_t) key; 506 syscallarg(int) size; 507 syscallarg(int) shmflg; 508 } */ *uap = v; 509 int segnum, mode, error; 510 511 mode = SCARG(uap, shmflg) & ACCESSPERMS; 512 if (SCARG(uap, key) != IPC_PRIVATE) { 513 again: 514 segnum = shm_find_segment_by_key(SCARG(uap, key)); 515 if (segnum >= 0) { 516 error = shmget_existing(p, uap, mode, segnum, retval); 517 if (error == EAGAIN) 518 goto again; 519 return error; 520 } 521 if ((SCARG(uap, shmflg) & IPC_CREAT) == 0) 522 return ENOENT; 523 } 524 return shmget_allocate_segment(p, uap, mode, retval); 525 } 526 527 void 528 shmfork(vm1, vm2) 529 struct vmspace *vm1, *vm2; 530 { 531 struct shmmap_state *shmmap_s; 532 size_t size; 533 int i; 534 535 if (vm1->vm_shm == NULL) { 536 vm2->vm_shm = NULL; 537 return; 538 } 539 540 size = shminfo.shmseg * sizeof(struct shmmap_state); 541 shmmap_s = malloc(size, M_SHM, M_WAITOK); 542 memcpy(shmmap_s, vm1->vm_shm, size); 543 vm2->vm_shm = (caddr_t)shmmap_s; 544 for (i = 0; i < shminfo.shmseg; i++, shmmap_s++) 545 if (shmmap_s->shmid != -1) 546 shmsegs[IPCID_TO_IX(shmmap_s->shmid)].shm_nattch++; 547 } 548 549 void 550 shmexit(vm) 551 struct vmspace *vm; 552 { 553 struct shmmap_state *shmmap_s; 554 int i; 555 556 shmmap_s = (struct shmmap_state *)vm->vm_shm; 557 if (shmmap_s == NULL) 558 return; 559 for (i = 0; i < shminfo.shmseg; i++, shmmap_s++) 560 if (shmmap_s->shmid != -1) 561 shm_delete_mapping(vm, shmmap_s); 562 free(vm->vm_shm, M_SHM); 563 vm->vm_shm = NULL; 564 } 565 566 void 567 shminit() 568 { 569 int i; 570 571 shminfo.shmmax *= PAGE_SIZE; 572 573 for (i = 0; i < shminfo.shmmni; i++) { 574 shmsegs[i].shm_perm.mode = SHMSEG_FREE; 575 shmsegs[i].shm_perm._seq = 0; 576 } 577 shm_last_free = 0; 578 shm_nused = 0; 579 shm_committed = 0; 580 } 581